• Refine Query
  • Source
  • Publication year
  • to
  • Language
  • 23
  • 17
  • 8
  • 3
  • 2
  • 2
  • 1
  • Tagged with
  • 74
  • 74
  • 28
  • 19
  • 19
  • 18
  • 16
  • 15
  • 13
  • 12
  • 11
  • 11
  • 10
  • 10
  • 10
  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
41

Calmodulin/KCa3.1 channel interactions as determinant to the KCa3.1 Ca2+ dependent gating : theoretical and experimental analyses

Morales, Patricia 02 1900 (has links)
Differentes études ont montré que la sensibilité au Ca2+ du canal KCa3.1, un canal potassique indépendant du voltage, était conférée par la protéine calmoduline (CaM) liée de façon constitutive au canal. Cette liaison impliquerait la région C-lobe de la CaM et un domaine de $\ikca$ directement relié au segment transmembranaire S6 du canal. La CaM pourrait égalment se lier au canal de façon Ca2+ dépendante via une interaction entre un domaine de KCa3.1 du C-terminal (CaMBD2) et la région N-lobe de la CaM. Une étude fut entreprise afin de déterminer la nature des résidus responsables de la liaison entre le domaine CaMBD2 de KCa3.1 et la région N-lobe de la CaM et leur rôle dans le processus d'ouverture du canal par le Ca2+. Une structure 3D du complexe KCa3.1/CaM a d'abord été générée par modélisation par homologie avec le logiciel MODELLER en utilisant comme référence la structure cristalline du complexe SK2.2/CaM (PDB: 1G4Y). Le modèle ainsi obtenu de KCa3.1 plus CaM prévoit que le segment L361-S372 dans KCa3.1 devrait être responsable de la liaison dépendante du Ca2+ du canal avec la région N-lobe de la CaM via les résidus L361 et Q364 de KCa3.1 et E45, E47 et D50 de la CaM. Pour tester ce modèle, les résidus dans le segment L361-S372 ont été mutés en Cys et l'action du MTSET+ (chargé positivement) et MTSACE (neutre) a été mesurée sur l'activité du canal. Des enregistrements en patch clamp en configuration ``inside-out`` ont montré que la liaison du réactif chargé MTSET+ au le mutant Q364C entraîne une forte augmentation du courant, un effet non observé avec le MTSACE. De plus les mutations E45A et E47A dans la CaM, ont empêché l'augmentation du courant initié par MTSET+ sur le mutant Q364C. Une analyse en canal unitaire a confirmé que la liaison MTSET+ à Q364C cause une augmentation de la probabilité d'ouverture de KCa3.1 par une déstabilisation de l'état fermé du canal. Nous concluons que nos résultats sont compatibles avec la formation de liaisons ioniques entre les complexes chargés positivement Cys-MTSET+ à la position 364 de KCa3.1 et les résidus chargés négativement E45 et E47 dans la CaM. Ces données confirment qu'une stabilisation électrostatique des interactions CaM/KCa3.1 peut conduire à une augmentation de la probabilité d'ouverture du canal en conditions de concentrations saturantes de Ca2+. / The Ca2+ sensitivity of the voltage-insensitive calcium activated potassium channel of intermediate conductance KCa3.1 is conferred by calmodulin (CaM) constitutively bound to the membrane-proximal region of the channel intracellular C-terminus. A study was performed to investigate the nature of the residues involved in the CaM/KCa3.1 interactions and determine how these interactions could modulate the channel gating properties. A 3D-structure of the KCa3.1/CaM complex was first generated by homology modeling with MODELLER using as template the crystal structure of SK2.2/CaM complex (PDB: 1G4Y). The resulting structural model of KCa3.1 plus CaM predicts that the segment L361-S372 in KCa3.1 should be responsible for the Ca2+-dependent binding of the channel to the CaM-N lobe, with residues L361 and Q364 facing residues E45, E47 and D50 of CaM. To test this model residues in L361-S372 segment were substituted by Cys and the action of MTSET+ (positive charged) and MTSACE (neutral charged) measured on channel activity. Inside-out patch clamp recordings showed that the binding of the charged MTSET+ reagent to the Q364C mutant resulted in a strong current increase, an effect not seen with the neutral MTSACE. The mutations E45A and E47A in CaM prevented the current increase initiated by MTSET+ on the Q364C mutant. A single channel analysis confirmed that the binding of MTSET+ to Q364C caused an increase in the channel open probability by a destabilization of the channel closed state. Altogether, our results are compatible with the formation of ionic bonds between the positively charged Cys-MTSET+ complex at position 364 in KCa3.1 and the negatively charged E45 and E47 residues in CaM, and confirm that an electrostatic stabilization of the CaM/KCa3.1 interactions can lead to an increase in the channel open probability at saturating Ca2+.
42

Modulation de l’adressage membranaire et de la fonction du canal CaV2.3 par les résidus leucine du domaine guanylate kinase impliqués dans la liaison à forte affinité de CaVβ

Shakeri, Behzad 09 1900 (has links)
Les canaux Ca2+ activés par le voltage (CaV) sont des protéines membranaires qui génèrent des courants Ca2+ dans les cellules excitables suite à une dépolarisation membranaire. Ces complexes oligomériques sont classifiés selon les propriétés structurelles de la sous-unité principale qui forme le pore du canal, soit la sous-unité CaVα1. La sous-unité auxiliaire CaVβ module l’expression membranaire et la dépendance au voltage du « gating » de la sous-unité CaVα1 des canaux HVA (« high-voltage-activated ») CaV1 et CaV2. La sous-unité CaVβ est formée par un domaine SH3 (« Src homology-3 ») connecté à un domaine GK (« guanylate kinase-like ») par le biais d’un domaine variable HOOK. Dans le but d’identifier les résidus dans la CaVβ3 qui sont responsables de la densité membranaire du CaV2.3, nous avons produit des mutants de la sous-unité auxiliaire le long de ses domaines fonctionnels. Cela dit, la délétion complète du domaine SH3 ainsi que la délétion du domaine HOOK n’ont pas modifié la densité membranaire de CaV2.3 ni ses propriétés d’activation. Cependant, la délétion de cinq résidus dans le domaine GK interrompt l’expression membranaire et l’expression fonctionnelle de CaV2.3. La mutation de résidus identifiés précédemment comme soutenant une affinité de liaison de l’ordre du nanomolaire dans le domaine GK de CaVβ n’a pas modifié de manière significative l’adressage membranaire de CaV2.3. Toutefois, les mutations de quatre résidus leucine dans les régions α3, α6, β10 et α9 du domaine GK ont grandement réduit l’adressage membranaire du canal CaV2.3. Nos résultats confirment que le domaine GK contient les déterminants moléculaires responsables de la fonction chaperone de CaVβ. Cela dit, l’adressage membranaire induit par CaVβ semble être déterminé par des éléments structuraux qui ne sont pas strictement dépendants d’une liaison à haute affinité de CaVβ sur CaVα1. / Voltage-activated Ca2+ channels (CaV) are membrane proteins that play a key role in promoting Ca2+ influx in response to membrane depolarization in excitable cells. They form oligomeric complexes that are classified according to the structural properties of the pore-forming CaVα1 subunit. Auxiliary CaVβ subunits modulate cell-surface expression and voltage-dependent gating of high-voltage-activated (HVA) CaV1 and CaV2 α1 subunits. CaVβ subunits are formed by a Src homology-3 (SH3) domain and a guanylate kinase-like (GK) domain connected through a variable HOOK-domain. In order to identify the residues responsible for the CaVβ3-induced membrane density of CaV2.3, we produced mutants along CaVβ3’s fonctionnal domains. Complete deletion of the SH3 domain as well as deletion of the HOOK domain did not alter plasma membrane targeting of CaV2.3 nor its typical activation gating. In contrast, 5-residue deletions in the GK domain disrupted cell surface trafficking and functional expression of CaV2.3. Mutations of residues known to carry nanomolar affinity binding in the GK domain of CaVβ did not significantly alter cell surface density. Mutations of a quartet of leucine residues in the α3, α6, β10, and α9 regions of the GK domain, each expected to curtail protein-protein interaction, were found to significantly impair cell surface targeting of CaV2.3 channels. Altogether, our results confirm that the GK domain includes the molecular determinants carrying the chaperone function of CaVβ. However, CaVβ-induced cell surface targeting appears to be determined by structural elements that are not strictly dominated by high-affinity binding of CaVβ onto CaVα1.
43

Conception d’inhibiteurs de l’activité tyrosine kinase basée sur la plasticité conformationnelle : applications aux domaines kinase des protéines Axl, Abl et Src / Design of inhibitors of tyrosine kinase based on the conformational plasticity : applications to protein kinase domains of Axl, Abl and Src

Lebeau, Alexandre 16 May 2013 (has links)
Le récepteur tyrosine kinase Axl a été découvert en 1988. Depuis, son implication dans les phénomènes de cancérisation a été mis en lumière. Ce récepteur est surexprimé, entre autres, dans les lignées cellulaires du cancer du pancréas et du cancer du sein triple négatif. Le succès des inhibiteurs de kinase contre les cancers (imatinib, erlotinib …) nous a poussés à nous focaliser sur la conception d'inhibiteurs du domaine kinase de la protéine Axl afin d'élaborer de nouveaux anticancéreux. Pour ce faire, nous avons décidé de modéliser le domaine kinase de la protéine Axl en conformations dites ‘active' et ‘inactive'. Les modèles ont ensuite été validés par différentes méthodes : des méthodes de bioinformatique structurale mais aussi par amarrage comparatif et par criblage virtuel focalisé. Sur la base de ces modèles, une chimiothèque virtuelle focalisée a été construite et amarrée dans les modèles d'Axl. J'ai ensuite effectué la synthèse chimique de 15 des ligands conçus à l'étape précédente et ciblant la conformation ‘inactive' du domaine kinase d'Axl. Aucun de ces ligands n'est apparu actif dans les tests in vitro. Dans un second temps, nous nous sommes intéressés à la chimie des noyaux 4- et 7-azaindoles. Ces travaux ont permis la synthèse de 12 ligands dirigés contre les conformations ‘inactives' des domaines kinases d'Abl et de Src dont certains ont montré une activité prometteuse. Parallèlement, un criblage a très large échelle a été publié et nous avons utilisé ces nouveaux résultats pour réévaluer l'existence d'une conformation -inactive' – de type « DFG-out » - du domaine kinase d'Axl. Ces travaux permettront la conception de nouveaux ligands ciblant efficacement Axl. / The receptor tyrosine kinase Axl was discovered in 1988. Latter on, its involvement in the cancer development was highlighted. Axl is overexpressed in pancreatic cancer and triple-negative breast cancer cell lines. The success of kinase inhibitors (imatinib, erlotinib ...) led us to focus on the design of inhibitors targetting the kinase domain of Axl. As a guide, we modeled the protein-kinase domain in its active and inactive conformations to perform structure-based drug design. The models were then validated by different methods: structural bioinformatics, comparative docking and focused virtual screening. A virtual chemical library was built and docked into Axl models.Then, I synthetized 15 chemical compounds targetting the ‘inactive' conformation of the kinase domain of Axl. However, none were active in an in vitro assay. Then we were interested in the chemistry of 4 and 7-azaindole cores. This work led to the synthesis of 12 ligands among which several showed promising activity against the ‘inactive' conformation of the kinase domains of Abl and Src.Meanwhile, a large-scale screening was published and we used that new data to re-evaluate the modeling of a "DFG-out" inactive conformation of Axl.
44

Análise da via de regulação gênica por ácido retinóico: uma abordagem por bioinformática e biologia estrutural / Analysis of retinoic acid pathway: an approach by bioinformatics and structural biology.

Sobreira, Tiago José Paschoal 11 December 2008 (has links)
As vias de sinalização celular por meio de moléculas são um dos principais meios de controle funcional de um organismo. O entendimento das funções de moléculas sinalizadoras facilita a compreensão das vias metabólicas de um organismo, assim possibilitando uma melhor compreensão de vários eventos biológicos e também de várias doenças. A sinalização pelo ácido retinóico (AR), e seus derivados, é responsável pelo controle de várias funções, por exemplo: crescimento celular, diferenciação celular, formação da retina, desenvolvimento cardíaco e também relacionado a várias patologias como diabetes, obesidades, cânceres, e doenças cardiovasculares. A ação do ácido retinóico é controlada em dois níveis: no metabolismo de síntese/degradação e na sua utilização na sinalização para a expressão gênica. A maquinaria que controla o metabolismo inclui as enzimas de síntese do AR (aldeído desidrogenase ALDH) e as enzimas de degradação do AR (Cyp26), que controlam a distribuição espaço-temporal do AR durante a embriogênese. As ALDHs são enzimas NAD(P)+ dependentes, que oxidam uma ampla gama de aldeídos para os seus correspondentes ácidos carboxílicos, sendo ALDH1A2 a principal enzima na transformação de retinal em ácido retinóico. A maquinaria da sinalização celular por AR contém os receptores nucleares controlados por AR (RARs) que estão envolvidos com o controle da transcrição gênica. Os mecanismos de controle de expressão mais comuns são os que ocorrem na fase transcricional. Um desses mecanismos envolve proteínas que se ligam às regiões promotoras de transcrição, representadas por trechos de DNA que geralmente estão localizados próximo à região de início da transcrição, mas que também podem estar a centenas ou até milhares de pares de bases desse início. Essas proteínas modulam a maquinaria transcricional, podendo ativá-la ou inibi-la. A associação de várias técnicas como a biologia molecular, bioinformática, filogenia, análises estruturais de biomoléculas, mecânica molecular e métodos termodinâmicos tem se mostrado uma poderosa abordagem para compreensão de sistemas biológicos simplificando e agilizando o desenvolvimento do conhecimento científico. Nessa direção, esse estudo desenvolveu duas análises: a primeira estudando a evolução das funções das enzimas ALDH, utilizando-se de técnicas de genômica combinatória, filogenia, bioinformática, estrutura de biomoléculas e de biologia do desenvolvimento, tentando compreender o modo como as ALDHs, que apresentam as seqüências de aminoácidos bastante similares, puderam divergir para gerar funções diversas como a destoxificação e a sinalização. Para este estudo foram analisados os genomas de 487 organismos em busca de seqüências de ALDHs e também o genoma do organismo modelo Branchiostoma floridae. Foram obtidas 190 seqüências que foram utilizadas em uma análise filogenética para tentar compreender a função primordial e também para definir grupos de aminoácidos candidatos a marcadores das diferentes famílias de ALDHs. Essas 190 seqüências também foram modeladas estruturalmente e analisada a forma e o volume do canal onde se aloja o aldeído a ser oxidado. A partir dessas informações foi possível prever que as ALDHs passaram das funções ancestrais de controle do padrão corporal para algo mais abrangente como funções protetoras. A segunda análise, utilizando-se das estruturas tridimensionais dos fatores de transcrição ligados ao DNA em diferentes posições e submetendo esses complexos a processos de mecânica molecular, cálculos termodinâmicos e análises das ligações de hidrogênio para tentar prever os mais prováveis sítios de interação entre os receptores e o DNA. O modelo escolhido para essa análise foram os fatores de transcrição regulados por ácido retinóico o RAR e RXR utilizando a região promotora do gene RARE-2 para avaliar as mais prováveis regiões de ligação desses fatores. Para esse estudo foram construídos 71 complexos proteína-DNA que foram submetidos a processos de mecânica molecular e cálculos termodinâmicos. A partir dessas informações foi possível prever uma região de maior afinidade entre o fator de transcrição e o DNA. As análises de ligações de hidrogênio possibilitaram definir exatamente a região de interação entre os fatores de transcrição e o DNA, e também descrever as interações moleculares responsáveis pela especificidade da interação. / Cellular signaling paths through molecules are one of the main processes of functional control of an organism. The comprehension of signaling molecules functions enables one to understand the metabolic pathways of an organism, along with related biological events and several diseases. The signaling through retinoic acid (RA) and its secondary products is responsible for controlling several functions, such as cellular growth and differentiation, retinas formation and cardio development, and is also related to several pathologies such as diabetes, obesity, cancers and cardiovascular disorders. There are two levels of control of retinoic acid activity: synthesis/degradation metabolism and its use in gene expression signaling. The machinery that controls the metabolism includes RAs synthesis (aldehyde dehydrogenase ALDH) and degradation (Cyp26) enzymes, which control the space-temporal distribution of RA during the embryogenesis. The ALDHs are NAD(P)+ dependent enzymes that oxidize many types of aldehydes into the related carboxylic acids, being the ALDH1A2 the main enzyme involved in the process of transformation of retinal into retinoic acid. The machinery of cellular signaling through RA contains the nuclear receptors controlled by RA (RARs) that are involved in the control of gene transcription. The most common mechanisms of expression control are the ones that occur during the transcriptional phase. One of these mechanisms involves proteins that bind to the transcription promoter regions, represented by DNA sequences that are usually located close to the region where the transcription starts, but can also be hundreds or thousands of base pairs apart from the starting point. These proteins modulate the transcriptional machinery, being responsible for both its activation and inhibition. The association of several techniques as molecular biology, bioinformatics, phylogeny, structural analysis of biomolecules, molecular mechanics and thermodynamic methods has been shown as a powerful tool for the understanding of biological systems, simplifying and speeding up the production of related scientific knowledge. Facing this direction, the present study developed two analyses. The first one studied the evolution of ALDH enzymes functions, using the techniques of combinatory genomic, phylogeny, bioinformatics, structure of biomolecules and developmental biology, in the attempt of understanding how the ALDHs could diverge and acquire different functions as detoxification and signaling, despite the fact that they have very similar aminoacid sequences. For this study, ALDHs sequences were searched for in the genome of 487 organisms plus the model organisms, Branchiostoma floridae. All 190 sequences obtained were used in a phylogenetic analysis, in the attempt of understanding the primordial function of the enzyme and defining possible groups of conserved aminoacids in the different families of ADLHs. These 190 sequences were also structurally modeled and the shape and volume of the channel where the aldehyde is placed to be oxidized were analyzed. Based on this information, it became possible to predict that the ALDHs moved from ancestral functions of corporal pattern control to a wider spectrum of protection functions. For the second analysis we submitted the complex formed by tridimensional structures of the transcriptional factors bond to DNA in different positions to processes of molecular mechanics, thermodynamic calculi and analysis of the hydrogen bonds, in order to predict the most probable sites of interaction between the receptors and the DNA. The model chosen for this analysis were the transcription factors regulated by retinoic acid, RAR and RXR, using the promoter region of the gene RARE-2 to assay the most probable binding regions of these factors. For this study, 71 protein-DNA complexes were built and submitted to processes of molecular mechanics and thermodynamic calculi. Based on the resulting data, it became possible to predict a region of greater affinity between the transcription factor and the DNA. The analyses of hydrogen bonds enabled us to define the exact region where the interaction between the transcription factor and the DNA takes place and also enabled us to describe the molecular interactions responsible for the specificity of this interaction.
45

Descoberta de ligantes do receptor de melanocortina-5 (MC5R) como candidatos a moduladores da sebogênese: estudos de modelagem por homologia, triagem virtual e ensaio celular / Discovery of ligands for the melanocortin-5 receptor (MC5R) as candidates of modulators of sebogenesis: homology modeling studies, virtual screening and cellular assay

Katekawa, Edson 20 November 2018 (has links)
A acne é uma condição da pele multifatorial com implicações socioeconômicas importantes. Um dos principais fatores que contribuem com a sua etiologia é a superprodução de sebo. Até o momento, há poucos tratamentos seguros e eficazes disponíveis. O receptor de melanocortina-5 (MC5R), um receptor acoplado à proteína G da família das rodopsinas, é uma das proteínas responsáveis pela diferenciação de sebócitos e consequente produção de sebo, mas não há opções de tratamento através do antagonismo deste receptor. Neste trabalho, investigamos a melanocortina-5 como alvo molecular para a descoberta de ligantes como moduladores da sebogênese. Para tanto, empregamos estudos de modelagem por homologia e triagem virtual baseada em estrutura do alvo para construir um modelo 3D da MC5R e identificar de candidatos a ligantes da proteína, respectivamente. Em seguida, avaliamos o potencial de inibição da sebogênese em sebócitos SEBO662AR em meio lipogênico. Os resultados obtidos indicaram a descoberta de peptídeos e flavonoides com características inibidoras e estimuladoras da produção de sebo. Novos esqueletos moleculares foram identificados como promissores para a modulação da sebogênese. Os estudos realizados permitirão o desenvolvimento de novos ativos dermatológicos e cosméticos com potencial de modular a oleosidade da pele, de modo a contribuir com a mitigação dos efeitos da acne, psoríase, alopecia e seborreia, entre outras doenças. / Acne is a multifactorial skin condition with important socioeconomic implications. One of the main factors that contribute with its etiology is sebum overproduction. Until now, there are few safe, effective treatments available. Melanocortin-5 receptor (MC5R), a G protein-coupled receptor of the rhodopsin family, is one of the proteins responsible for sebocyte differentiation and consequent sebum production, but there are no options for treatment by antagonism of this receptor. In this work, we investigated MC5R as molecular target for the discovery of ligands as sebogenesis modulators. For that, we used homology modeling studies, and structure-based virtual screening in order to, respectively, build a MC5R 3D model and identify ligand candidates for this protein. Then, we evaluated their sebogenesis inhibition potential on SEBO662AR sebocytes in lipogenic conditions. The obtained results indicated the discovery of peptides and flavonoids with inhibitory and stimulatory sebum production characteristics. New scaffolds were identified as promising for sebogenesis modulation. The performed studies will allow the development of novel dermatologic and cosmetic actives with the potential to modulate skin oiliness in order to contribute to the mitigation of the effects of acne, psoriasis, alopecia and seborrhea, among other diseases.
46

Estudos físico-químicos e bioquímicos de uma proteína de 21 kDa do Trypanosoma cruzi / Physico-chemical and biochemical studies of a 21 kDa protein of Trypanosoma cruzi

Moreira, Heline Hellen Teixeira 26 January 2012 (has links)
A proteína P21 do Trypanosoma cruzi participa no processo de infecção da célula hospedeira, desse modo é de grande importância: elucidar as vias de sinalização induzidas pela proteína, bem como caracterizar a nível molecular e estrutural a P21. O que vai auxiliar no entendimento da função biológica da P21 e sua participação no processo de infecção. A P21 recombinante é expressa Escherichia coli em sua maioria na fração insolúvel. Visando aumento de proteína na fração solúvel, foi realizada a clonagem do gene da P21 em vetor pSMT3, bem como testes de expressão subsequentes em diferentes cepas de expressão de E. coli, em vetor pET-28 e pSMT3 e variadas condições de expressão e lise celular. Desse modo obtiveram-se as condições que permitissem uma maior concentração da P21 na fração solúvel. A expressão foi realizada no vetor pET-28, cepa BL21, a 37°C com meio 2xYT a 0.5 mM de IPTG, utilizando a técnica de sonicação como lise. A P21 foi purificada em cromatografia de afinidade e posteriormente em coluna de exclusão molecular. Foram realizados estudos de modelagem por homologia levaram a elaborar a hipótese de que a P21 tem a função de inibidor de serinoprotease do tipo kunitz. Posteriormente essa hipótese foi confirmada com ensaios de avaliação da atividade inibitória da P21 frente à tripsina, quimiotripsina e elastase neutrofílica, o qual a P21 mostrou capaz de inibir a elastase neutrofílica. Estudos com espalhamento dinâmico da luz (DLS) revelaram que as amostras testadas de P21 contém diferentes concentrações de agregados de alto peso molecular em todos os pHs avaliados. Outras medidas foram realizadas para avaliar o estado de agregação da P21 de acordo com a temperatura e verificou-se que entre 32-52 °C, a proteína apresenta menor raio hidrodinâmico, indicando menor agregação nesse intervalo. Estudos de dicroísmo circular revelaram que a P21 apresenta por volta de 20% de α hélice, 32% de folha-β, 22% de volta e 23 % estrutura randômica. De acordo com a curva de desnaturação referente ao espectro de CD obtido, a P21 se mostra desnaturada a partir de 64°C. / The Trypanosoma cruzi protein P21 participates in the host cell infection process, but its specific function is poorly described. Thus it is important to elucidate the signaling pathways induced by the protein and characterize the P21 at the structural and molecular levels, as a contribution towards the understanding of the P21 biological function and its role in the infection process. The Escherichia coli recombinant P21 is expressed mostly in the insoluble fraction. Aiming to increase protein in the soluble fraction, we performed the cloning of the P21 gene in pSMT3 vector and subsequent expression tests in different expression strains of E. coli in pET-28 and pSMT3 vectors and varied expression conditions and cell lysis. Thus we obtained conditions that allow a greater concentration of the P21 in the soluble fraction. The expression vector was performed using vector pET-28, in Bl21 strain at 37°C in 2xYT culture medium with 0.5 mM IPTG, using the sonication technique in cell lysis. The recombinant P21 was purified by Ni affinity chromatography and subsequently a molecular exclusion column. We performed homology modeling studies which led to assume that P21 can be a serinprotease inhibitor of Kunitz type. Furthermore, this hypothesis was confirmed in the experiments testing the P21 inhibitory activity against the trypsin, chymotrypsin and elastase. We found the P21 exclusively inhibit neutrophil elastase. Studies using dynamic light scattering (DLS) revealed that the samples containing P21 contained large molecular weigth aggregates in different concentrations at all evaluated pHs. Others measurements were performed to assess the P21 aggregation state according to the temperature and we found that between 32-52 °C the protein had a smaller hydrodynamic radius, indicating less aggregation in this range. Circular dichroism (CD) studies revealed that P21 has about 20% α-helix, 32% β, -sheet, 22% turn and 23% of random structure. According to the denaturation curve for the CD spectrum obtained, the P21 was denatured from 64°C.
47

Modelagem molecular de compostos arilpiperazínicos e suas interações com o receptor 5-HT1A / Molecular modeling of arylpiperazine compounds and their interactions with the 5-HT1A receptor

Weber, Karen Cacilda 29 August 2008 (has links)
Os inibidores seletivos da recaptação de serotonina (ISRSs) representam a classe mais importante de antidepressivos em uso clínico atualmente. Entretanto, esses medicamentos costumam levar de duas a seis semanas para apresentar os efeitos de sua ação terapêutica. Estudos clínicos mostram que quando um antagonista do receptor 5-HT1A é administrado juntamente com um ISRS, um aumento da concentração extracelular de serotonina é observado nas áreas terminais dos neurônios. Assim, a combinação de um antagonista do receptor 5-HT1A com um ISRS pode acelerar o início da ação antidepressiva, aumentando a eficácia do tratamento farmacológico da depressão. A classe mais importante de ligantes do receptor 5-HT1A são os compostos arilpiperazínicos. O presente estudo teve como objetivo o entendimento das características importantes para as interações entre uma série de compostos arilpiperazínicos com o receptor 5-HT1A. Para tal, foram realizados estudos de Relação Quantitativa entre Estrutura e Atividade (QSAR) bi- e tridimensionais, empregando as seguintes abordagens: métodos quimiométricos baseados em descritores teóricos, QSAR por hologramas (HQSAR) e o método de Análise Comparativa de Campos Moleculares (CoMFA). Essas análises foram complementadas com a modelagem por homologia do receptor 5-HT1A e com estudos de docking ligante-receptor realizados para alguns compostos arilpiperazínicos. Modelos de QSAR com boa consistência interna, habilidade preditiva e estabilidade foram obtidos em todos os casos. Os modos de interação observados apresentaram consistência com dados experimentais disponíveis sobre os resíduos importantes para as interações com ligantes arilpiperazínicos. Os principais resultados indicaram algumas características dos ligantes que são importantes para a afinidade pelo receptor 5-HT1A, tais como a presença de um anel benzotiofeno como substituinte Ar2, substituintes pouco volumosos na posição Z e receptores de ligações de hidrogênio na posição orto do anel Ar1. Esses resultados foram corroborados pelo estudo das interações com o modelo do receptor 5-HT1A, que indicou uma importante interação hidrofóbica do grupo benzotiofeno com o resíduo Trp6.48 do receptor, assim como uma ligação de hidrogênio entre a hidroxila na posição Z e o resíduo Thr3.37 e, ainda, entre o oxigênio do anel Ar1 e o resíduo Asn7.39. As informações obtidas neste estudo podem fornecer subsídios para o planejamento de novos ligantes com afinidade pelo receptor 5-HT1A. / Selective serotonin reuptake inhibitors (SSRIs) are the most important class of antidepressants in current clinical use. However, they present the serious drawback of a delay of two to six weeks in the onset of therapeutic effect. Clinical studies have shown that when a 5-HT1A receptor antagonist is administrated along with a SSRI, an increase of extracellular serotonin concentration in neuronal terminal areas is observed. Thus, the combination of a 5- HT1A receptor antagonist and a SSRI could accelerate the onset of antidepressant action, improving the pharmacological treatment of depression. The most important class of 5-HT1A receptor ligands are arylpiperazine compounds. In the present study, our aim was to understand the main features of the interaction between a series of arylpiperazines and the 5- HT1A receptor. Bi- and Tridimensional Quantitative Structure-Activity Relationship (QSAR) studies were conducted employing the following approaches: chemometric methods based on theoretical descriptors, Hologram QSAR (HQSAR), and Comparative Molecular Field Analysis (CoMFA). These analyses were complemented by 5-HT1A receptor homology modeling and ligand-receptor docking studies. QSAR models presenting good internal consistency, predictive power and stability were obtained in all cases. The observed binding modes are consistent with available experimental data on residues considered crucial for interactions with arylpiperazine compounds. The main results have indicated some important features for optimal binding to the 5-HT1A receptor, such as the presence of a benzothiophene ring as Ar2 substituent, small groups at position Z and hydrogen bond acceptors at the ortho position of Ar1 ring. These results were corroborated by modeling the interactions with the 5- HT1A receptor, which has indicated an important hydrophobic interaction between the benzothiophene group and residue Trp6.48, a hydrogen bond between the OH group at position Z and residue Thr3.37, as well as between the oxygen in Ar1 and residue Asn7.39. The information gathered in these studies can be useful for the design of new ligands displaying affinity to the 5-HT1A receptor.
48

Estudo computacional da interação de terpenos com acetilcolinesterase de Rhipicephalus microplus e potenciais novos candidatos a carrapaticidas / Computational study of the interaction of terpenes with acetylcholinesterase of Rhipicephalus microplus and potential new candidates for carapaticides

Lopes, Alberto Jorge Oliveira 07 July 2015 (has links)
Submitted by Rosivalda Pereira (mrs.pereira@ufma.br) on 2017-06-14T16:54:49Z No. of bitstreams: 1 AlbertoLopes.pdf: 7651509 bytes, checksum: 542872f26d9cc8bf6b0b65d8a7151d16 (MD5) / Made available in DSpace on 2017-06-14T16:54:49Z (GMT). No. of bitstreams: 1 AlbertoLopes.pdf: 7651509 bytes, checksum: 542872f26d9cc8bf6b0b65d8a7151d16 (MD5) Previous issue date: 2015-07-07 / Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPQ) / Fundação de Amparo à Pesquisa e ao Desenvolvimento Científico e Tecnológico do Maranhão (FAPEMA) / The tick Rhipicephalus microplus is the major cattle ectoparasite of the world accounting for losses of billions of dollars that directly affect the return of such livestock. Its control is difficult due to the resistance of ticks to all chemical bases commercially available miticides. Acaricidal activity of terpenes has been evaluated in several studies that show satisfactory results, indicating these compounds are potential sources of new acaricidal products. The aim of this work was to select terpenes with potential activity against enzyme acetylcholinesterase (AChE) from R. microplus. Properties of the molecular volume, geometric parameters and vibrational terpenes were obtained from quantum chemical calculations the density functional theory level. Bioinformatic methodologies were applied to study the interaction of terpenes identified in essential oils of Citrus spp. and Lippia spp. with three AChE R. microplus. Since there are no available experimental structures, models of the three AChE were generated by homology modeling and then refined by molecular dynamics simulations. Soon after, were studies of molecular docking to detect best energy conformation of interaction and molecular dynamics simulations of this complex were carried out to study the behavior of this interaction. Our results suggest that the known acaricide activity of carvacrol is associated with its interaction with AChEs, while the acaricide activity of thymol is not associated with inhibition of that enzyme. Also, as expected, showed an excellent interaction coumafos acaricide and reports the first record of interaction of AChE from R. microplus with gammamuuruleno and elemol terpenes, molecules with few studies and that now configure themselves as candidates potential new acaricidal products. / O carrapato Rhipicephalus microplus é o principal ectoparasita da bovinocultura mundial sendo responsável por perdas de bilhões de dólares que afetam diretamente o retorno de tal produção animal. Seu controle é difícil devido à resistência dos carrapatos a todas as bases químicas de acaricidas comercialmente disponíveis. A atividade acaricida de terpenos tem sido avaliada em vários estudos que mostram resultados satisfatórios, indicando que estes compostos são fontes potenciais de novos produtos acaricidas. O objetivo desse trabalho foi selecionar terpenos com potencial atividade sobre a enzima acetilcolinesterase (AChE) de R. microplus. As propriedades do volume molecular, os parâmetros geométricos e vibracionais de terpenos foram obtidos a partir de cálculos de química quântica no nível da teoria do funcional de densidade. Metodologias de bioinformática foram aplicadas para estudar a interação de terpenos identificados em óleos essenciais de Citrus spp. e Lippia spp. com as três AChE de R. microplus. Como não existem estruturas experimentais disponíveis, modelos das três AChE foram gerados por modelagem por homologia e em seguida refinadas por simulações de dinâmica molecular. Logo após, foram realizados estudos de docagem molecular para detectar a melhor conformação energética de interação e simulações de dinâmica molecular desse complexo foram realizadas para estudarmos o comportamento dessa interação. Os resultados sugerem que a conhecida atividade carrapaticida do carvacrol está associada com a sua interação com a AChE, enquanto que a atividade carrapaticida do timol não está associado com a inibição dessa mesma enzima. Além disso, como esperado, mostrou uma excelente interação do carrapaticida cumafós e relata o primeiro registro da interação da AChE de R. microplus com os terpenos gama-muuruleno e elemol, moléculas com poucos estudos e que a partir de agora configuram-se como candidatos potenciais para novos produtos acaricidas.
49

Impact of Mutations of Targeted Serine, Histidine, and Glutamine Residues in Citrus paradisi Flavonol Specific Glucosyltransferase Activity

Sathanantham, Preethi 01 August 2015 (has links)
A flavonol specific glucosyltransferase cloned from Citrus paradisi has strict substrate and regio-specificity (Cp3OGT). The amino acid sequence of Cp3OGT was aligned with sequences of an anthocyanidin UDP- dependant glucosyltransferase (UGT) from Clitorea ternatea and a UGT from Vitis vinifera that can glucosylate both flavonols and anthocyanidins. Using homology modeling to identify candidate regions followed by site directed mutagenesis, three double mutations were constructed and biochemically characterized. S20G+T21S mutant protein retained activity with flavonols similar to the wildtype Cp3OGT but the mutant had optimum activity at 60°C and broadened substrate acceptance to include the flavanone naringenin. S290C+S319A mutant protein retained 40% activity with quercetin relative to WT, and had an optimum pH shift. H154Y+Q87I mutant protein was only 10% active with quercetin relative to WT. Docking analysis revealed that H154, Q87 and S20 could be involved in orienting the acceptor molecules within the acceptor binding site whereas S319 and S290 residues are involved in maintaining the active site conformation.
50

Elucidation of Substrate Binding Interactions for Human Organic Cation Transporters 1 (SLC22A1) and 2 (SLC22A2) Using In Silico Homology Modeling in Conjunction with In Vitro Site-Directed Mutagenesis and Kinetic Analysis

Lai, Raymond E 01 January 2018 (has links)
The organic cation transporters (OCTs) play a critical role in the absorption, distribution and elimination of many drugs, hormones, herbal medicines, and environmental toxins. Given the broad substrate specificity of OCTs, they fall victim to the high susceptibility for contributing to harmful drug-drug interactions. Further defining how human (h)OCTs mechanistically bind to its broad array of substrates will provide significant insight to the understanding and prediction of drug-drug interactions in polypharmacy patients and the advancement of future rational drug design for therapeutics targeting OCTs. The goal of the current study was to elucidate the critical amino acid residues for transporter-substrate binding interactions on human (h)OCT1 and 2 utilizing in silico molecular modeling techniques (homology modeling and automated docking), as well as in vitro mutagenesis and kinetic transport experiments. Three-dimensional homology models were generated for hOCT1 and 2 using Piriformospora indica phosphate transporter (PiPT) serving as template. A putative binding pocket was identified and used to dock the prototypical substrate MPP+. Docking studies revealed five residues for each transporter (hOCT1 and hOCT2) that may be critical for substrate-transporter interactions. The in silico data was used to guide subsequent in vitro site-directed mutagenesis and kinetic analysis. Four hOCT1 mutants (Gln241Lys, Thr245Lys, Tyr361Ala, and Glu447Lys) and three hOCT2 mutants (Gln242Lys, Tyr362Phe, and Tyr362Ala) showed complete loss of MPP+ transporter activity. Decreased affinity for MPP+ was observed for Phe244Ser and Thr245Ser in hOCT1, and Tyr245Ala in hOCT2. All amino acid residues highlighted in the in vitro experiments may be potentially critical for substrate-transporter interactions particularly Tyr361, Phe244 and Thr245 in hOCT1; and Tyr362 and Tyr245 in hOCT2. Docking of known structurally divergent hOCT1 and hOCT2 substrates revealed similar binding interactions as that identified for MPP+, albeit with some unique residues, suggesting the presence of a large central cavity within both transporters. Through the combination of in silico and in vitro experiments, a putative binding pocket was defined and several residues important for substrate-transporter interaction were identified and verified for hOCT1 and hOCT2. Further defining how OCTs biochemically interact with their broad array of substrates will provide significant insight to the understanding and prediction of drug-drug interactions in polypharmacy patients and the advancement of future rational drug design for therapeutics targeting OCT1 and OCT2.

Page generated in 0.1297 seconds